Decoupling the impact of biodiversity and environmental factors on the biomass and biomass growth of trees in subtropical forests

Author:

Tiwari Ravi Mohan1,Liu Jinliang23ORCID,Xie Yuchu1,Yao Shenhao4,Liu Shenglong5,Wu Sumei6,Liu Julian7,Qian Haiyuan8,Lei Zupei9,Zhang Hongwei10,Zhong Lei1,Wei Boliang1,Yu Mingjian1

Affiliation:

1. College of Life Sciences, Zhejiang University , Hangzhou 310058 , China

2. College of Life and Environmental Science, Wenzhou University , Wenzhou 325035 , China

3. National and Local Joint Engineering Research Center of Ecological Treatment Technology for Urban Water Pollution, Wenzhou University , Wenzhou 325035 , China

4. Zhejiang Museum of Natural History , Hangzhou 310014 , China

5. Longquan Conservation Center, Qianjiangyuan-Baishanzu National Park , Lishui 323700 , China

6. Qingyuan Conservation Center, Qianjiangyuan-Baishanzu National Park , Lishui 323800 , China

7. Jiulongshan National Nature Reserve Management Center , Lishui 323312 , China

8. Qianjiangyuan National Park Administration , Quzhou 324300 , China

9. Wuyanling National Nature Reserve Management Center , Wenzhou 325500 , China

10. Qingliangfeng National Nature Reserve Administration , Hangzhou 311321 , China

Abstract

Abstract The relationship between biodiversity and ecosystem functioning has become a central issue in any forest ecosystem. However, there are few studies on the interaction of environmental factors based on the history of subtropical forest disturbance. In this study, we intended to disentangle the relationship between different aspects of biodiversity and biomass or biomass change when considering the environmental factors of 34 subtropical forest plots in Zhejiang Province, eastern China. We used linear models to analyze the effects of taxonomic, functional and phylogenetic diversity at the plot level of tree biomass and its growth with or without environmental factors. Taxonomic diversity and functional diversity, rather than phylogenetic diversity, showed significant correlations with biomass and biomass growth. We further found that there was a positive linear relationship between biomass or biomass growth and mean annual temperature and altitude. In addition, the relationship between biomass growth and functional diversity was significantly stronger than the relationship between biomass growth and phylogenetic diversity or taxonomic diversity when environmental factors and stand developmental stages were considered. Our results suggested that the relationship between biodiversity and ecosystem functioning is dependent upon the selection of diversity index and environmental conditions.

Funder

National Key R & D program

Scientific Research Project of Baishanzu National Park

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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